Khan Asma Yasmeen, Saha Baishakhi, Suresh Kumar Gopinatha
Biophysical Chemistry Laboratory, Chemistry Division, CSIR-Indian Institute of Chemical Biology, Kolkata 700 032, India.
Biophysical Chemistry Laboratory, Chemistry Division, CSIR-Indian Institute of Chemical Biology, Kolkata 700 032, India.
J Photochem Photobiol B. 2014 Mar 5;132:17-26. doi: 10.1016/j.jphotobiol.2014.01.014. Epub 2014 Feb 8.
The interaction of phenazinium dyes, safranine O and phenosafranine with single stranded polyadenylic acid was studied using spectroscopic viscometric and calorimetric techniques. Both dyes bind to polyadenylic acid strongly with association constant of the order of 10(5)M(-1). Safranine O showed higher affinity over phenosafranine. The binding induced conformational changes in polyadenylic acid, but the extent of change was much higher with safranine O. The bound safranine O molecules acquired strong induced circular dichroism spectra compared to the weak induced circular dichroism of phenosafranine. Fluorescence polarization, iodide quenching, viscosity results and energy transfer from bases to bound dyes suggested intercalation of the dye molecules to polyadenylic acid structure. The binding was entropy driven in both the cases. Circular dichroism and optical melting studies revealed cooperative melting profiles for dye-polyadenylic acid complexes that provided evidence for the formation of self-structured polyadenylic acid on dye binding. This structural reorganization was further confirmed by differential scanning calorimetry results.
利用光谱、粘度测定和量热技术研究了吩嗪鎓染料、番红O和酚藏花红与单链聚腺苷酸的相互作用。两种染料都与聚腺苷酸强烈结合,缔合常数约为10⁵M⁻¹。番红O对酚藏花红表现出更高的亲和力。这种结合诱导了聚腺苷酸的构象变化,但番红O引起的变化程度要高得多。与酚藏花红微弱的诱导圆二色性相比,结合的番红O分子获得了强烈的诱导圆二色性光谱。荧光偏振、碘淬灭、粘度结果以及从碱基到结合染料的能量转移表明染料分子插入到聚腺苷酸结构中。在这两种情况下,结合都是由熵驱动的。圆二色性和光学熔解研究揭示了染料 - 聚腺苷酸复合物的协同熔解曲线,这为染料结合时形成自组装聚腺苷酸提供了证据。差示扫描量热法结果进一步证实了这种结构重组。